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CURE MONITORING OF ADHESIVE FOR COMPOSITE/METAL BONDED STRUCTURE BASED ON HIGHLY NONLINEAR SOLITARY WAVES

机译:基于高度非线性孤波的复合/金属粘结结构胶粘剂的固化监测

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In this paper, a nondestructive evaluation technique based on highly nonlinear solitary waves (HNSWs) is proposed to monitor the curing process of adhesive for composite/metal bonded structure. HNSWs are mechanical waves with high energy intensity and non-distortive nature which can form and propagate in a nonlinear system, such as a one-dimensional granular chain. In the present study, a finite element model of the one-dimensional granular chain is established with the commercial software Abaqus, to study the reflection behavior of HNSWs at the interface between the particle at the end of chain and the sample. The simulation results show that the time of flight (TOF) of the primary reflected solitary wave decreases with the stiffness of the sample increases, and the amplitude ratio (AR) between the primary reflected solitary wave and the incident solitary wave increases. An HNSWs transducer based on the one-dimensional granular chain is designed and fabricated. The relationship between the characteristic parameters of the primary reflected solitary wave (TOF and AR) and the curing time of adhesive for a composite/metal bonded structure is experimentally investigated. The experiment results suggest that the TOF decreases and the AR increases as the epoxy cures. The experimental results are in good agreement with the simulation results. This study provides a new characterization method for monitoring the curing process of adhesive for composite/metal bonded structure.
机译:本文提出了一种基于高度非线性孤立波(HNSWs)的无损评估技术,以监测复合材料/金属粘结结构的粘合剂的固化过程。 HNSW是具有高能量强度和非失真性质的机械波,可以在非线性系统(例如一维颗粒链)中形成和传播。在本研究中,使用商业软件Abaqus建立了一维颗粒链的有限元模型,以研究HNSW在链末端的颗粒与样品之间的界面的反射行为。仿真结果表明,随着样品刚度的增加,一次反射孤立波的飞行时间(TOF)减小,一次反射孤立波与入射孤立波之间的振幅比(AR)增大。设计并制造了基于一维颗粒链的HNSW传感器。实验研究了复合材料/金属粘结结构的一次反射孤立波的特征参数(TOF和AR)与胶粘剂固化时间之间的关系。实验结果表明,随着环氧树脂的固化,TOF降低,AR升高。实验结果与仿真结果吻合良好。这项研究提供了一种新的表征方法,用于监测复合材料/金属粘结结构的粘合剂的固化过程。

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